Natalia Toro
#111,282
Most Influential Person Now
American particle physicist
Natalia Toro's AcademicInfluence.com Rankings
Natalia Torophysics Degrees
Physics
#4713
World Rank
#6431
Historical Rank
#1531
USA Rank
Particle Physics
#427
World Rank
#446
Historical Rank
#86
USA Rank
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Physics
Natalia Toro's Degrees
- PhD Physics Stanford University
Why Is Natalia Toro Influential?
(Suggest an Edit or Addition)According to Wikipedia, Natalia Toro is an American particle physicist known for her pioneering work in the study of dark matter. Based at the Perimeter Institute for Theoretical Physics in Waterloo, Ontario, Toro was the youngest winner of the Intel Science Talent Search and was awarded the 2015 New Horizons in Physics Prize.
Natalia Toro's Published Works
Published Works
- Simplified Models for LHC New Physics Searches (2011) (660)
- Simplified models for a first characterization of new physics at the LHC (2008) (578)
- New Fixed-Target Experiments to Search for Dark Gauge Forces (2009) (533)
- US Cosmic Visions: New Ideas in Dark Matter 2017: Community Report (2017) (445)
- Working Group Report: New Light Weakly Coupled Particles (2013) (341)
- Dark Sectors 2016 Workshop: Community Report (2016) (279)
- Fundamental Physics at the Intensity Frontier (2012) (264)
- Search for a new gauge boson in electron-nucleus fixed-target scattering by the APEX experiment. (2011) (233)
- Dark Sectors and New, Light, Weakly-Coupled Particles (2013) (216)
- Probing dark forces and light hidden sectors at low-energy e+e- colliders (2009) (203)
- Physics with the KLOE-2 experiment at the upgraded DAΦNE (2010) (194)
- Discovering New Light States at Neutrino Experiments (2010) (178)
- Dark sectors at the Fermilab SeaQuest experiment (2018) (144)
- Analyzing the Discovery Potential for Light Dark Matter. (2015) (133)
- MARMOSET: The Path from LHC Data to the New Standard Model via On-Shell Effective Theories (2007) (130)
- New Electron Beam-Dump Experiments to Search for MeV to few-GeV Dark Matter (2013) (126)
- Dark matter, millicharges, axion and scalar particles, gauge bosons, and other new physics with LDMX (2018) (125)
- An electron fixed target experiment to search for a new vector boson A′ decaying to e+e− (2010) (98)
- Terrestrial and Solar Limits on Long-Lived Particles in a Dark Sector (2009) (91)
- Cosmology and Accelerator Tests of Strongly Interacting Dark Matter (2018) (82)
- The Light Dark Matter eXperiment (LDMX) (2018) (80)
- Testing GeV-Scale Dark Matter with Fixed-Target Missing Momentum Experiments (2014) (79)
- Dark matter search in a Beam-Dump eXperiment (BDX) at Jefferson Lab (2014) (68)
- On the Origin of Light Dark Matter Species (2010) (66)
- Constructing the Tree-Level Yang-Mills S-Matrix Using Complex Factorization (2008) (65)
- The Heavy Photon Search Test Detector (2014) (58)
- Continuous-spin particle field theory with helicity correspondence (2015) (57)
- High energy electron signals from dark matter annihilation in the Sun (2009) (55)
- Multiphotons and photon jets from new heavy vector bosons (2012) (49)
- Physics motivation for a pilot dark matter search at Jefferson Laboratory (2014) (49)
- On the theory of continuous-spin particles: wavefunctions and soft-factor scattering amplitudes (2013) (47)
- A gauge field theory of continuous-spin particles (2013) (46)
- On the theory of continuous-spin particles: helicity correspondence in radiation and forces (2013) (43)
- Axion dark matter detection by superconducting resonant frequency conversion (2019) (42)
- Study of LHC searches for a lepton and many jets (2011) (36)
- Search for a Dark Photon in Electro-Produced $e^{+}e^{-}$ Pairs with the Heavy Photon Search Experiment at JLab (2018) (36)
- Basic Research Needs for Dark-Matter Small Projects New Initiatives: Report of the Department of Energy’s High Energy Physics Workshop on Dark Matter (2018) (36)
- Snowmass2021 Cosmic Frontier: The landscape of low-threshold dark matter direct detection in the next decade (2022) (35)
- Persistent fine-tuning in supersymmetry and the NMSSM (2005) (32)
- A CSP Field Theory with Helicity Correspondence (2014) (28)
- Celestial-body focused dark matter annihilation throughout the Galaxy (2021) (27)
- Avoiding an Empty Universe in RS I Models and Large-N Gauge Theories (2006) (23)
- Dark matter search in a Beam-Dump eXperiment (BDX) at Jefferson Lab: an update on PR12-16-001 (2017) (19)
- Sub-GeV dark matter production at fixed-target experiments (2020) (19)
- DASEL: Dark Sector Experiments at LCLS-II (2018) (18)
- Physics with CEBAF at 12 GeV and future opportunities (2021) (17)
- Directly Deflecting Particle Dark Matter. (2019) (17)
- Sommerfeld-enhanced annihilation in dark matter substructure: Consequences for constraints on cosmic-ray excesses (2011) (17)
- Report of the Topical Group on Physics Beyond the Standard Model at Energy Frontier for Snowmass 2021 (2022) (16)
- Accelerating the Discovery of Light Dark Matter (2015) (15)
- A new class of particle in 2 + 1 dimensions (2014) (13)
- Dark Sector Physics with a Primary Electron Beam Facility at CERN (2018) (12)
- Cosmology and signals of light pseudo-Dirac dark matter (2021) (11)
- New light, weakly-coupled particles (2012) (10)
- Snowmass 2021 Rare & Precision Frontier (RF6): Dark Matter Production at Intensity-Frontier Experiments (2022) (10)
- A high efficiency photon veto for the Light Dark Matter eXperiment (2019) (9)
- Dark Sector Physics at High-Intensity Experiments (2022) (9)
- Dark matter search in a Beam-Dump eXperiment (BDX) at Jefferson Lab (2018 update to PR12-16-001) (2019) (8)
- Lepton-nucleus cross section measurements for DUNE with the LDMX detector (2019) (8)
- Experiments and Facilities for Accelerator-Based Dark Sector Searches (2022) (8)
- Snowmass2021 Theory Frontier: Theory Meets the Lab (2022) (7)
- Current Status and Future Prospects for the Light Dark Matter eXperiment (2022) (7)
- Probing invisible vector meson decays with the NA64 and LDMX experiments (2021) (6)
- Is dark matter heavy because of electroweak symmetry breaking? Revisiting heavy neutrinos (2005) (6)
- The Effect of Local Dark Matter Substructure on Constraints in Sommerfeld-Enhanced Models (2011) (4)
- Direct Deflection of Particle Dark Matter. (2019) (4)
- Electron Scattering and Neutrino Physics (2022) (4)
- Model Hamiltonians for the Fractional Quantum Hall E ect (2002) (4)
- Ultralight millicharged dark matter via misalignment (2021) (3)
- Snowmass Theory Frontier: Astrophysics and Cosmology (2022) (3)
- The SLAC Linac to ESA (LESA) Beamline for Dark Sector Searches and Test Beams (2022) (3)
- A Snowmass Whitepaper: Dark Matter Production at Intensity-Frontier Experiments (2022) (2)
- Dark Sector Experiments at LCLS-II (DASEL) Accelerator Design (2017) (2)
- Snowmass 2021 Cross Frontier Report: Dark Matter Complementarity (Extended Version) (2022) (2)
- Simulation of dark bremsstrahlung in Geant4 (2022) (1)
- Test Beam and Irradiation Facilities (2022) (1)
- Axion Dark Matter (2022) (0)
- Re-examination of Experimental Limits on the Weak Pion-Nucleon Coupling Constant (2000) (0)
- Axion dark matter detection by superconducting resonant frequency conversion (2020) (0)
- A gauge field theory of continuous-spin particles (2013) (0)
- Working Group Report: High Intensity Electron and Photon Beams (2013) (0)
- Interactions of particles with “continuous spin” fields (2023) (0)
- A pr 2 01 4 A CSP Field Theory with Helicity Correspondence (2021) (0)
- New experimental results for a vector boson A (2012) (0)
- Study of LHC searches for a lepton and many jets (2012) (0)
- Fundamental physics at the threshold of discovery (2007) (0)
- Letter of Intent to PAC 42 Dark matter search in a Beam-Dump eXperiment ( BDX ) at Jefferson Lab The BDX Collaboration (2014) (0)
- Search for a dark matter force mediator (2018) (0)
- High Intensity Electron and Positron Beams Conveners (2013) (0)
- Constructing the S-matrix With Complex Factorization (2009) (0)
- On the theory of continuous-spin particles: wavefunctions and soft-factor scattering amplitudes (2013) (0)
- Dark matter and hierarchies from electroweak symmetry breaking (2005) (0)
- Searching for Prompt and Long-Lived Dark Photons in Electro-Produced $e^+e^-$ Pairs with the Heavy Photon Search Experiment at JLab (2022) (0)
- On the theory of continuous-spin particles: helicity correspondence in radiation and forces (2013) (0)
- Large-N G auge T heories (2021) (0)
- Status of the APEX experiment (2015) (0)
- Theory and Status of New Sub-GeV Forces (2012) (0)
- An Independent Analysis of Evidence for $ Oscillations in the Super-Kamiokande Atmospheric Neutrino Data (1998) (0)
- Dark Matter Complementarity - Summary (2022) (0)
- 6 New light , weakly-coupled particles (2012) (0)
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What Schools Are Affiliated With Natalia Toro?
Natalia Toro is affiliated with the following schools: